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Genome-wide association study identifies three novel loci for type 2 diabetes

✍ Scribed by Hara, K.; Fujita, H.; Johnson, T. A.; Yamauchi, T.; Yasuda, K.; Horikoshi, M.; Peng, C.; Hu, C.; Ma, R. C. W.; Imamura, M.; Iwata, M.; Tsunoda, T.; Morizono, T.; Shojima, N.; So, W. Y.; Leung, T. F.; Kwan, P.; Zhang, R.; Wang, J.; Yu, W.; Maegawa, H.; Hirose, H.; Kaku, K.; Ito, C.; Watada, H.; Tanaka, Y.; Tobe, K.; Kashiwagi, A.; Kawamori, R.; Jia, W.; Chan, J. C. N.; Teo, Y. Y.; Shyong, T. E.; Kamatani, N.; Kubo, M.; Maeda, S.; Kadowaki, T.


Book ID
121678171
Publisher
Oxford University Press
Year
2013
Tongue
English
Weight
400 KB
Volume
23
Category
Article
ISSN
0964-6906

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Genome-Wide Association Analysis Identif
✍ Saxena, R.; Voight, B. F.; Lyssenko, V.; Burtt, N. P.; de Bakker, P. I. W.; Chen πŸ“‚ Article πŸ“… 2007 πŸ› American Association for the Advancement of Scienc 🌐 English βš– 444 KB

New strategies for prevention and treatment of type 2 diabetes (T2D) require improved insight into disease etiology. We analyzed 386,731 common single-nucleotide polymorphisms (SNPs) in 1464 patients with T2D and 1467 matched controls, each characterized for measures of glucose metabolism, lipids, o